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The urokinase-receptor (CD87) is expressed in cells of the megakaryoblastic lineage

K D Wohn1, S M Kanse, V Deutsch

  • 1Haemostasis Research Unit, Kerckhoff-Klinik, MPI, Bad Nauheim, Germany.

Insights

The urokinase (uPA) receptor is upregulated during megakaryoblastic cell differentiation, influencing cell communication and maturation in the bone marrow microenvironment. This receptor plays a key role in megakaryocytopoiesis.

Area of Science:

  • Hematology
  • Cell Biology
  • Molecular Biology

Background:

  • Megakaryocytopoiesis involves complex cellular interactions in the bone marrow.
  • Adhesion receptors and proteolysis regulate megakaryocyte motility and differentiation.
  • The role of specific cell surface protease receptors in this process requires further definition.

Purpose of the Study:

  • To investigate the expression and function of protease receptors, specifically the urokinase (uPA) receptor, on megakaryoblastic cells.
  • To determine the role of uPA receptor in megakaryocyte differentiation and maturation.

Main Methods:

  • Utilized megakaryoblastic cell lines (MEG-01, Dami) and primary megakaryocytes.
  • Employed fluorescent activated cell-sorting, ligand-binding assays, and RT-PCR to assess uPA receptor expression.
  • Investigated uPA receptor function using phosphatidylinositol-specific phospholipase C treatment.

Main Results:

  • Low basal uPA receptor expression was observed, increasing significantly (3-6 fold) upon phorbolester (PMA) stimulation.
  • uPA receptor expression correlated with increased alpha IIb beta 3-integrin and differentiation markers.
  • uPA receptor mRNA was detected in cultured megakaryocytes but not platelets, indicating differentiation-dependent regulation.

Conclusions:

  • uPA receptor expression is upregulated in a differentiation-dependent manner in megakaryoblastic cells.
  • The uPA receptor's surface expression and function may regulate megakaryocyte maturation via cellular communication.
  • This study highlights the uPA receptor as a key molecule in megakaryocytopoiesis within the bone marrow microenvironment.

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